English

Interacting Dark Sectors in Anisotropic Universe: Observational Constraints and $H_{0}$ Tension

Cosmology and Nongalactic Astrophysics 2023-01-20 v2

Abstract

The present study reveals observational constraints on the coupling between dark components of anisotropic Bianchi type I universe. We assume interaction between dark matter and dark energy and split the continuity equation with inclusion of interaction term Γ\Gamma. Two scenarios have been considered (i) when coupling between dark components is constant and (ii) when it is a function of redshift (zz). Metropolis-Hasting algorithm has been used to perform Monte Carlo Markov Chain (MCMC) analysis by using observational Hubble data obtained from cosmic chronometric (CC) technique, cosmic microwave background (CMB) baryon acoustic oscillation (BAO), Pantheon compilation of Supernovae type Ia (SNIa), their joint combination and a Gaussian prior on the Hubble parameter H0H_{0}. It is obtained that the combination of all databases plus H0H_{0} prior marginalized over a present dark energy density gives stringent constraints on the current value of coupling as 0.001<δ<0.041-0.001<\delta<0.041 in constant coupling model and 0.042<δ<0.053-0.042<\delta<0.053 in varying coupling model at 68\% confident level. In general, for both models, we found ωX1\omega^{X}\approx -1 and δ(δ0)0\delta(\delta_{0})\approx 0 which indicate that still recent data favor uncoupled Λ\LambdaCDM model. Our estimations show that in constant coupling model (H0=73.90.95+1.5,δ=0.0230.024+0.017)(H_{0}=73.9^{+1.5}_{-0.95}, \delta=0.023^{+0.017}_{-0.024}) which naturally leads to consistent value of the Hubble constant. This result is interesting because the previous works show that such a high value of Hubble constant requires the significant value of coupling parameter δ\delta. It has been also observed that in the constant coupling model, we do not find any disagreement between the estimated H0H_{0} and those reported by Hubble space telescope (HST) and large scale structure (LSS) experiments.

Keywords

Cite

@article{arxiv.2001.03775,
  title  = {Interacting Dark Sectors in Anisotropic Universe: Observational Constraints and $H_{0}$ Tension},
  author = {Hassan Amirhashchi and Anil Kumar Yadav and Nafis Ahmad and Vikrant Yadav},
  journal= {arXiv preprint arXiv:2001.03775},
  year   = {2023}
}

Comments

11 pages, 21 figures